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首页> 外文期刊>The Astrophysical Journal. Letters >THE STELLAR SPHEROID, THE DISK, AND THE DYNAMICS OF THE COSMIC WEB
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THE STELLAR SPHEROID, THE DISK, AND THE DYNAMICS OF THE COSMIC WEB

机译:斯特拉尔球体,盘和宇宙网的动态

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Models of the advanced stages of gravitational instability predict that baryons that form the stellar populations of current galaxies at z = 0 displayed a web-like structure at high z, as part of the cosmic web (CW). We explore details of these predictions using cosmological hydrodynamical simulations. When the stellar populations of the spheroid and disk components of simulated late-type galaxies are traced back separately to high zs we found CW-like structures where spheroid progenitors are more evolved than disk progenitors. The distinction between the corresponding stellar populations, as driven by their specific angular momentum content j, can be explained in terms of the CW evolution, extended to two processes occurring at lower z. First, the spheroid progenitors strongly lose j at collapse, which contrasts with the insignificant j loss of the disk progenitors. The second is related to the lack of alignment, at assembly, between the spheroid-to-be material and the already settled proto-disk, in contrast to the alignment of disk-to-be material, in some cases resulting from circumgalactic, disk-induced gravitational torques. The different final outcomes of these low-z processes have their origins in the different initial conditions driven by the CW dynamics.
机译:重力不稳定的先进阶段的模型预测,在Z = 0处形成当前星系的恒星堆的恒星在高z处显示出类似的网状结构,作为宇宙网(CW)的一部分。我们使用宇宙学流体动力模拟探索这些预测的细节。当模拟后型星系的球状和盘组分的恒星堆分别追溯到高ZS时,我们发现CW样结构,其中球形祖细胞比盘祖细胞更加进化。通过其特定角动量含量j驱动的相应恒星群之间的区别可以在CW进化方面解释,扩展到在较低Z时发生的两个过程。首先,球状祖的祖细胞在崩溃时强烈丢失J,这与磁盘祖细胞的不显着j损失形成鲜明对比。第二个与组装在球形待材料和已经沉降的原型之间的对准缺乏对准相关的是,与圆盘材料的对比相比,在一些壳体,圆盘产生的情况下 - 引起的引力扭矩。这些低Z过程的不同最终结果具有由CW动态驱动的不同初始条件中的起源。

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